English

Tidal breakup of quadruple stars in the Galactic Centre

Astrophysics of Galaxies 2018-06-27 v2

Abstract

The most likely origin of hypervelocity stars (HVSs) is the tidal disruption of a binary star by the supermassive black hole (MBH) in the Galactic Centre (GC). However, HE0437-5439, a 99 M_\odot B-type main-sequence star moving with a heliocentric radial velocity of about 720720 km s1^{-1} at a distance of 60\sim 60 kpc, and the recent discovered hypervelocity binary candidate (HVB), traveling at 570\sim 570 km s1^{-1}, challenge this standard scenario. Recently, Fragione & Gualandris (2018) have demonstrated that the tidal breakup of a triple star leads to an insufficient rate. Observations show that quadruple stars made up of two binaries orbiting their common center of mass (the so-called 2+2 quadruples) are 4%\approx 4\% of the stars in the solar neighborhood. Although rarer than triples, 2+2 quadruple stars may have a role in ejecting HVBs as due to their larger energy reservoir. We present a numerical study of 2+2 quadruple disruptions by the MBH in the GC and find that the production of HVBs has a probability 24%\lesssim 2-4\%, which translates into an ejection rate of 1\lesssim 1 Gyr1^{-1}, comparable to the triple disruption scenario. Given the low ejection rate, we suggest that alternative mechanisms are responsible for the origin of HVBs, as the ejection from the interaction of a young star cluster with the MBH in the GC and the origin in the Large Magellanic Cloud.

Keywords

Cite

@article{arxiv.1804.10510,
  title  = {Tidal breakup of quadruple stars in the Galactic Centre},
  author = {Giacomo Fragione},
  journal= {arXiv preprint arXiv:1804.10510},
  year   = {2018}
}

Comments

9 pages, 6 Figures, 2 Tables, post-referee version